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Chebyshevskii Sbornik, 2015, Volume 16, Issue 4, Pages 41–76 (Mi cheb435)  

This article is cited in 3 scientific papers (total in 3 papers)

The initial-boundary value problem for a singularly perturbed parabolic equation in the case of double and triple root of the degenerate equation

V. F. Butuzov, A. I. Bychkov

Lomonosov Moscow State University
Full-text PDF (366 kB) Citations (3)
References:
Abstract: The article considers two initial-boundary value problems for a singularly perturbed parabolic equation
$$ \varepsilon^{2}\left(u_{t}-\Delta u\right)=f(u,x,y,t,\varepsilon), \left(x,y,t\right)\in g\times\left(0<t\leq T\right), $$
where $\varepsilon$ is a small positive parameter, $\Delta$ is the Laplas operator, for cases where degenerate equation $f(u,x,y,t,0)=0$ has root $u=\varphi(x,y,t)$ of multiplicity 2 or 3. Conditions are determined in each case for the problem to have a solution of boundary-layer type. Asymptotics are found and justified for epsilon $\varepsilon\longrightarrow 0$, which consist of a regular part and a few boundary-layer series.
Unlike a well-known case of a single root of degenerate equation, boundary-layer solution asymptotic in case of a multiple root is constructed as a series in fractional powers of the small parameter, and these powers as well as scales of boundary layer variables depend on a multiplicity of the degenerate equation root. Another substantial difference is that three-zones of the boundary layer in a neighborhood of the initial time exist. These zones differ in decay behavior of boundary-level functions and scales of boundary-level value.
The existing algorithm for constructing boundary-layer functions in case of a single root gives unacceptable results and needs significant modifications. This holds for boundary-layer functions describing boundary-layer behavior of the solution in a neighborhood of initial time as well as for angular boundary-layer functions, which play role in a neighborhood of the curve $\partial g\times(t=0)$. Proposed here modified algorithm allows for constructing unified boundary-level functions for all three boundary-layer zones. This is an advantage of this method in comparison to the method of coordination of asymptotic decomposition, where a separate asymptotic is found for each zone and then they are coordinated with each other.
Asymptotic justification (i.e. existence of the solution with this asymptotic) is made using the asymptotic method of differential inequalities, that is lower and higher solutions of the problem are found using formal asymptotics.
Bibliography: 17 titles.
Keywords: singularly perturbed parabolic equations, boundary layer asymptotics, double and triple root of the degenerate equation.
Funding agency Grant number
Russian Foundation for Basic Research 15-01-04619
Received: 30.10.2015
Bibliographic databases:
Document Type: Article
UDC: 517.925.8
Language: Russian
Citation: V. F. Butuzov, A. I. Bychkov, “The initial-boundary value problem for a singularly perturbed parabolic equation in the case of double and triple root of the degenerate equation”, Chebyshevskii Sb., 16:4 (2015), 41–76
Citation in format AMSBIB
\Bibitem{ButByc15}
\by V.~F.~Butuzov, A.~I.~Bychkov
\paper The initial-boundary value problem for a singularly perturbed parabolic equation in the case of double and triple root of the degenerate equation
\jour Chebyshevskii Sb.
\yr 2015
\vol 16
\issue 4
\pages 41--76
\mathnet{http://mi.mathnet.ru/cheb435}
\elib{https://elibrary.ru/item.asp?id=25006093}
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  • https://www.mathnet.ru/eng/cheb/v16/i4/p41
  • This publication is cited in the following 3 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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    References:90
     
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